Title | Summary | SN |
---|---|---|
![]() | 1 | |
![]() | 2 | |
![]() | Welcome to the Physiological Society of Japan! | 3 |
![]() | Officers, concil members, and committees | 4 |
![]() | Each year, the Society holds an Annual Meeting with s... | 5 |
![]() | Jobs & grants to apply and other information | 6 |
![]() | 7 | |
![]() | 8 | |
![]() | 9 | |
![]() | 10 | |
![]() | 11 | |
![]() | 12 | |
![]() | 13 | |
![]() | 14 | |
![]() | 15 | |
![]() | 16 | |
![]() | 17 | |
![]() | 18 | |
![]() | 19 | |
![]() | International Studies For Overcoming Familial Sudden ... | 20 |
![]() | 21 | |
![]() | 22 | |
![]() | 23 | |
![]() | 24 | |
![]() | 25 | |
![]() | 26 | |
![]() | 27 | |
![]() | 28 | |
![]() | Research and Intensive Lecture Course Opportunities i... | 29 |
![]() | 30 | |
![]() | 31 | |
![]() | The Journal of Physiological Sciences is the official... | 32 |
![]() | Awards bestowed by the Physiological Society of Japan | 33 |
![]() | Recipients of Hiroshi and Aya Irisawa Memorial Award ... | 34 |
![]() | Recipients of Promotion Award of the Physiological So... | 35 |
![]() | Recipients of Hiroshi and Aya Irisawa Memorial Award ... | 36 |
![]() | Recipients of Hiroshi and Aya Irisawa Memorial Promot... | 37 |
![]() | Recipients of Aya Irisawa Memorial Promotion Award fo... | 38 |
![]() | Coming soon! | 39 |
![]() | The Physiological Society of Japan was founded in 1922. | 40 |
![]() | 41 | |
![]() | 1920 - 1929 | 42 |
![]() | 1930 - 1939 | 43 |
![]() | 1940 - 1949 | 44 |
![]() | 1950 - 1959 | 45 |
![]() | 1960 - 1969 | 46 |
![]() | 1970 - 1979 | 47 |
![]() | 1980 - 1989 | 48 |
![]() | 1990 - 1999 | 49 |
![]() | 2000 - 2009 | 50 |
![]() | 2010 - 2019 | 51 |
![]() | XXXVI th International Union of Physiological Science... | 52 |
![]() | 53 | |
![]() | 54 | |
![]() | Choju-Giga (Choju-Jinbutu-Giga, [Frolicking An... | 55 |
![]() | Science Topics is a collection of recent outstanding ... | 56 |
![]() | A critical time window for dopamine actions on the st... | 57 |
![]() | Brain pathway that drives psychological stress-induce... | 58 |
![]() | Molecular mechanism preventing KCNQ1/KCNE1 channel fr... | 59 |
![]() | Phosphatase activity of voltage-sensing phosphatase (... | 60 |
![]() | Signal transmission within the P2X2 trimeric receptor | 61 |
![]() | Clustering–Dispersion Dynamics of the KcsA Potassium ... | 62 |
![]() | Expression of immediate-early genes reveals ocular do... | 63 |
![]() | Prostaglandin E2-EP4 signaling inhibits elastogenesis... | 64 |
![]() | Orexin neurons suppress narcolepsy via two distinct e... | 65 |
![]() | A cholinergic trigger drives learning-induced plastic... | 66 |
![]() | Neuronal representation of event timing in the cerebe... | 67 |
![]() | TRPA1 detects environmental chemicals and induces avo... | 68 |
![]() | The role of the basal ganglia pathway to stop movements | 69 |
![]() | Gating of the Designed Trimeric/Tetrameric Voltage-Ga... | 70 |
![]() | Mechanism of sensing the membrane lipid surrounding t... | 71 |
![]() | Essential roles of endothelial class II PI3K-C2α in a... | 72 |
![]() | An unexpected functional link between pH-regulatory t... | 73 |
![]() | Brain has fast and slow two distinct odor pathways | 74 |
![]() | 3′ Phosphatase activity toward phosphatidylinositol 3... | 75 |
![]() | Maturation of a PKG-dependent retrograde mechanism fo... | 76 |
![]() | The cytoplasmic coiled-coil mediates cooperative gati... | 77 |
![]() | Dopamine neurons learn to encode the long-term value ... | 78 |
![]() | Neuronal calcium sensor-1 promotes immature heart fun... | 79 |
![]() | ‘Ca2+ nanodomain’-mediated activation of volume-sensi... | 80 |
![]() | Functional Loss of Cdkal1, a Novel tRNA Modification ... | 81 |
![]() | Contextual learning requires synaptic AMPA receptor d... | 82 |
![]() | Flexible network dynamics across cortical layers duri... | 83 |
![]() | Subunit counting of the KCNQ1-KCNE1 ion channel complex | 84 |
![]() | Orexin neurons are indispensable for stress-induced t... | 85 |
![]() | TRPV2 enhances axon outgrowth through its activation ... | 86 |
![]() | Temperature-dependence of proton permeation through a... | 87 |
![]() | New insights into functional compartments within ocul... | 88 |
![]() | Identification of synaptic tagging activity, a mechan... | 89 |
![]() | Gonadal steroids maintain in vivo ACh release in the ... | 90 |
![]() | Local control of Ca2+-dependent inactivati... | 91 |
![]() | Role of cardiac α1-adrenoceptor-subtype signali... | 92 |
![]() | Effect of troponin exchange on length-dependent activ... | 93 |
![]() | Conformational twist of the pore structure during gat... | 94 |
![]() | The voltage-sensitive phosphatase, Ci-VSP is activate... | 95 |
![]() | The δ2 glutamate receptor does not function as an ion... | 97 |
![]() | Regulation of voltage sensor movement of KCNQ1 channe... | 98 |
![]() | TRPA1 channel-mediated facilitation of excitatory syn... | 99 |
![]() | Regulation of Neural Activity through Temperature-Sen... | 100 |
![]() | CD38 is critical for maternal nurturing and social be... | 101 |
![]() | Involvement of Ion Channel in Anticancer Drug Resistance | 103 |
![]() | Roles of Volume-Sensitive Chloride Channel in Excitot... | 104 |
![]() | Axonal filtering enforces auditory coincidence detection | 105 |
![]() | 106 | |
![]() | Membership categories, application forms, honorary me... | 107 |
![]() | Regular members, student members, supporting members ... | 108 |
![]() | 109 | |
![]() | 110 | |
![]() | Guiding Principles for the Care and Use of Animals in... | 111 |